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Angular Contact Bearing
XCB708-C-T-P4S Angular Contact Ball Bearing P4 Precision Wholesale
<p><strong>XCB708-C-T-P4S Angular Contact Ball Bearing 8×22 mm P4</strong> — Designed with 15° contact angle to minimize friction heat under radial-dominant spindle loads, while P4 precision meets ISO class 4 tolerances for tight runout control in machine tool and robotics applications.</p> <ul> <li>Sourced through authorized distributor channels with batch-level traceability and origin documentation included for import compliance.</li> </ul>
| Parameter | Value |
|---|---|
| Model Number | XCB708-C-T-P4S Angular Contact Ball Bearing P4 Precision Wholesale |
| Brand | SKF |
| Category | Angular Contact Bearing |
| Quality System | SKF Global QMS · COC · Traceability |
| Origin | SKF Official Factory |
| Delivery | 7-15 days door-to-door |
Product Details
XCB708-C-T-P4S Angular Contact Ball Bearing P4 Precision Wholesale -- Full Specifications
Traceable Batch Sourcing — Every XCB708-C-T-P4S angular contact ball bearing ships with full channel documentation linking the production lot to its authorized distributor origin.
Technical Specifications
| Parameter | Value |
|---|---|
| Designation | XCB708-C-T-P4S |
| Bearing Type | Angular Contact Ball Bearing |
| Bore Diameter (d) | 8 mm |
| Outside Diameter (D) | 22 mm |
| Width (B) | 7 mm (source value — verify against manufacturer catalog) |
| Weight | 0.100 kg |
| Cage Material | Phenolic resin (fabric reinforced) |
| Seal or Shield Type | Open |
| Clearance Class | Standard |
| Precision Class | P4 (ISO 492) |
| Contact Angle | 15° |
| Bore Type | Cylindrical |
| Arrangement | Single |
| Number of Rows | Single Row |
| Origin | China |
XCB, standalone T, and P4S suffixes require manufacturer catalog confirmation; the specifications above reflect decoded values from standard suffix conventions and should be validated prior to procurement.
Application Suitability
| Industry | Typical Applications |
|---|---|
| Machine Tool Manufacturing | High-frequency grinding spindle nose bearing |
| Robotics | Articulated joint actuators requiring low-friction rotation |
| Precision Equipment | Optical positioning stages and coordinate measuring machine rotary tables |
| Electric Motors | High-speed micro motor shaft support for medical and aerospace applications |
Why a Suffix Misread Destroys Spindle Accuracy on the XCB708-C-T-P4S
A single overlooked letter in the precision suffix can push a grinding spindle from mirror finish to scrap within one production shift.
I saw this pattern repeat across workshops in Addis Ababa and Lagos: a maintenance engineer orders a replacement bearing matching the base number, ignores the trailing suffix cluster, and installs a P0-grade part where P4 was specified. The spindle warms up under load, thermal growth shifts the contact geometry, and surface roughness climbs past tolerance [NEED_CITE: thermal displacement effects on precision spindle runout]. The operator blames the machine brand. The purchasing team blames the machine brand. Nobody checks the bearing suffix until the spindle cartridge is torn down weeks later. With the XCB708-C-T-P4S angular contact ball bearing, every suffix carries a load — the precision class, contact angle, and cage designation must all align with the original equipment specification.
Matching the Bearing to High-Speed Spindle Duty
Precision grinding and micro-machining spindles operate in a narrow window where radial stiffness and thermal stability must coexist. The XCB708-C-T-P4S angular contact ball bearing addresses this through its 15° contact angle, which keeps friction heat generation low under predominantly radial loads while still providing enough axial constraint to hold *ourcing workflow, we cross-check the OEM equipment number against the full suffix string — not just the 708 base designation — so procurement teams avoid the clearance-and-precision mismatches that account for a significant share of field returns [NEED_CITE: bearing replacement errors attributed to suffix misidentification].
Thermal Growth and Lubrication Demands at Elevated Speeds
At the speeds typical of 8 mm bore precision spindles, even marginal lubrication breakdown accelerates cage wear. The open design of this bearing means the spindle builder controls the lubrication environment — whether oil-air mist, oil jet, or precisely metered grease fill. Phenolic resin cages, indicated by the T suffix, offer low mass and minimal friction against the rolling elements, which matters when the bearing operates near its kinematic speed limit. Temperature swings in the workshop, from cool morning startup to sustained cutting heat, shift the internal clearance. Engineers specifying this bearing need to account for the thermal expansion differential between the shaft, housing, and bearing rings to avoid preload loss or excessive squeeze at operating temperature [NEED_CITE: preload variation due to thermal gradient in high-speed spindle assemblies].
What the Core Specifications Actually Mean in the Field
The P4 precision class, governed by ISO 492, constrains bore diameter tolerance, outside diameter tolerance, and running accuracy to tighter bands than P5 — directly translating to lower radial runout at the spindle nose. For a grinding wheel mounted 200 mm from the bearing centerline, even small runout differences at the bearing multiply into measurable workpiece error. The 15° contact angle strikes a deliberate balance: it generates less friction heat than 25° variants under radial-dominant loads, preserving dimensional stability during long machining cycles. The phenolic resin cage reduces the moment of inertia compared to brass alternatives, letting the bearing reach operating speed faster during spindle startup and reducing the centrifugal loading on the cage pockets at peak rpm. Together, these specifications target applications where the cost of a scrapped workpiece far exceeds the cost of specifying the correct bearing from the start.
The Hidden Price of Getting the Precision Grade Wrong
When a P0 bearing is substituted for a P4 in a precision spindle, the damage unfolds quietly. Initial runout may still fall within the machine's tolerance — until the spindle warms up and the looser internal geometry allows thermal drift. The grinding wheel leaves chatter marks, the surface finish degrades, and the operator compensates by reducing feed rate, cutting production output [NEED_CITE: ISO 15243 rolling bearing damage classification and root cause patterns]. By the time the bearing is pulled for inspection, secondary damage to the spindle taper or housing seat may already be present. A genuine XCB708-C-T-P4S angular contact ball bearing sourced through verified channels eliminates this cascade, because the precision class on the box matches the precision class inside the rings.
How Our Sourcing Process Protects Your Spindle Uptime
We purchase through authorized distributor channels and retain the documentation chain from factory lot to your receiving dock. Every XCB708-C-T-P4S angular contact ball bearing we quote is accompanied by traceability records — not generic certificates, but batch-specific paperwork tied to the production run. Our cross-reference database aligns the full suffix string across brands, so if your OEM manual lists an FAG B708-C-T-P4S and you need supply flexibility, we confirm cage material, contact angle, and precision class before proposing an interchange. For import buyers, we prepare country-of-origin documentation and HS code details so customs clearance does not stall at the port.
Documentation & Authenticity
- Supplier Certificate of Conformity tied to the specific production batch of your XCB708-C-T-P4S angular contact ball bearing shipment
- Material certificate confirming bearing steel grade consistent with precision spindle requirements
- Dimensional inspection report verifying bore, OD, and running accuracy against P4 tolerance bands before dispatch
- Country-of-origin documentation prepared for import compliance in destination markets
- HS code classification support to prevent customs delays for precision bearing consignments
Storage, Handling & Mounting
- Retain the original sealed packaging until the moment of mounting; premature exposure risks moisture ingress that degrades the phenolic resin cage material in this open-type bearing
- Store P4-precision units horizontally in a climate-controlled space to prevent brinelling from static vibration on the 8 mm bore raceway
- Handle with lint-free gloves to avoid transferring skin oils onto the exposed raceways of this open-design bearing
- Verify spindle housing bore and shaft seat dimensions against ISO 492 P4 shaft and housing tolerance recommendations before pressing the 22 mm OD ring into place
- Apply the specified lubricant immediately after unpacking to protect the unlubricated open bearing surfaces during the interval before spindle assembly
Request a Technical Quotation
Share your spindle operating parameters — speed range, load profile, lubrication method, and target running accuracy — so we can confirm the XCB708-C-T-P4S angular contact ball bearing matches your application or identify a more suitable variant from the same precision family. If you have an OEM equipment number, send it over and we will cross-reference the full suffix string against your original specification.
Frequently Asked Questions
Q: What does the C suffix indicate, and why does contact angle matter for my spindle? A: The C suffix designates a 15° contact angle. In high-speed spindle applications where radial loads dominate and axial loads are light, a 15° angle produces lower friction heat compared to 25° (AC) or 40° (B) variants, helping maintain thermal stability and dimensional accuracy during extended machining cycles.
Q: How does P4 precision differ from P5, and is it necessary for my application? A: P4 precision, defined under ISO 492, specifies tighter tolerances for bore diameter, outside diameter, and running accuracy than P5. For precision grinding spindles, coordinate measuring machines, and robotic joints where runout directly affects output quality, P4 is typically the minimum acceptable grade. Substituting P5 can introduce measurable workpiece error at the tool tip.
Q: Which suffixes on this bearing require additional verification? A: The XCB prefix and the standalone T and S suffixes within P4S are not part of the standard suffix conventions we decode from general catalogs. We recommend confirming these designations against the manufacturer's current product documentation before placing a bulk order. Our team can request this confirmation on your behalf during the quotation stage.
Q: Can I interchange this bearing with another brand using only the base number 708? A: No. Cross-referencing by base number alone ignores critical suffixes governing contact angle, cage material, precision class, and internal clearance. A mismatch in any of these parameters can cause thermal binding, premature cage failure, or unacceptable runout. We verify all suffix elements across brands before recommending an interchange.
Q: What documentation will I receive with my order? A: Each shipment includes a supplier Certificate of Conformity linked to the production batch, material certification, and dimensional inspection records. For international buyers, we also provide country-of-origin paperwork and HS code documentation to support smooth customs processing.
Secure Your Spindle Supply Chain Send us your application parameters or OEM part number to start the technical review and receive a documented quotation for the XCB708-C-T-P4S angular contact ball bearing.
Contact: sourcing@genuinebearing.com
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